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Updated: Sep 9, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
A microbial chromatin remodeler drives gastric cancer progression and immune evasion by reprogramming the host
Xiaoshan Xie1, Yue Wei1, Jiaying Zheng1
1Guangdong Provincial Key Laboratory of Colorectal and Pelvic Floor Diseases, The Sixth Affiliated Hospital, Sun Yat-sen University, Guangzhou 510655, China; Biomedical Innovation Center, The Sixth Affiliated Hospital, Sun Yat-sen University, Guangzhou 510655, China; Key Laboratory of Human Microbiome and Chronic Diseases, Ministry of Education, Sun Yat-sen University, Guangzhou 510655, China.
Abstract:
First-line treatment for gastric cancer (GC) includes PD-1 blockade with chemotherapy, but resistance challenges treatment success. We identify Streptococcus anginosus (SA) as a tumor-resident oncobacterium driving GC progression and immune evasion. SA is enriched in GC patient tumors and drives tumor growth in mice. SA extracellular vesicles (saEVs) translocate the bacterial chromatin remodeler saSNF2 into host cells. saSNF2 partners with host transcription factor TEAD1-through its ATPase activity and participation in BRG1/BRM-associated factor (BAF) complex assembly-to activate oncogenic transcription. This transkingdom interaction upregulates the palmitoyltransferase ZDHHC11, which stabilizes PD-L1 via palmitoylation to establish an immunosuppressive niche, while amplifying other TEAD1 target genes to fuel tumor progression. saEVs promote tumor growth and limit CD8+ T cell infiltration in vivo. Pharmacological inhibition of ZDHHC11 reverses immune evasion and synergizes with anti-PD-1 checkpoint blockade. These findings establish SA as a multifaceted driver of GC and highlight the saSNF2-ZDHHC11 axis as a target to potentiate immunotherapy.
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